RAS PresidiumДоклады Российской академии наук. Химия, науки о материалах Doklady Chemistry

  • ISSN (Print) 2686-9535
  • ISSN (Online) 3034-5111

INFLUENCE OF As2S3 STOICHIOMETRY ON THE OPTICAL TRANSMISSION OF GLASS IN THE SPECTRAL RANGE 5–8 µm

PII
10.31857/S268695352260060X-1
DOI
10.31857/S268695352260060X
Publication type
Status
Published
Authors
Volume/ Edition
Volume 511 / Issue number 1
Pages
37-41
Abstract
Glassy chalcogenides AVBVI obtained by solidification of high-temperature melts inherit the polymolecular nature of the melt. The influence of this circumstance on the optical properties of glasses is important in connection with the use of optical fibers for fabrication and has not been adequately studied. Bulk samples of high-pure glasses As40 – xS60 + x (0 < x < 5) with the content of metal and silicon impurities less than 0.1‒0.2 ppm wt., carbon, oxygen, hydrogen compounds – no more than 0.5–1 ppm wt. and optical fibers from them were obtained. The IR spectra of bulk samples 12 cm long and optical fibers up to 15 m long were recorded in the spectral range 1000–2000 cm–1. Absorption bands with maxima near 1950, 1805, 1460, and 1320 cm–1, due to the content of superstoichiometric sulfur in glass, were found in the spectra of bulk samples and fibers, and the corresponding values of the extinction coefficients were determined. The results of the study allow us to consider the As2S3 stoichiometry as a factor that significantly affects the optical characteristics of glass.
Keywords
халькогенидные стекла стеклообразный сульфид мышьяка малые оптические потери средний ИК-диапазон
Date of publication
18.09.2025
Year of publication
2025
Number of purchasers
0
Views
6

References

  1. 1. Дианов Е.М., Петров М.Ю., Плотниченко В.Г., Сысоев В.К. // Квантовая электроника. 1982. Т. 9. № 4. С. 798–800. https://doi.org/10.1070/QE1982v012n04ABEH012237
  2. 2. Kanamori T., Terunuma Y., Takahashi S., Miyashita T. // J. Lightwave Technol. 1984. V. 2. № 5. P. 607–613. https://doi.org/10.1109/JLT.1984.1073657
  3. 3. Lines M.E. // J. Appl. Phys. 1984. V. 55. № 11. P. 4058. https://doi.org/10.1063/1.332995
  4. 4. Snopatin G.E., Churbanov M.F., Pushkin A.A., Gerasimenko V.V., Dianov E.M., Plotnichenko V.G. // J. Optoelectron. Adv. Mater. 2009. V. 3. № 7. P. 669–671.
  5. 5. Snopatin G.E. Churbanov M.F., Pushkin A.A., Plotnichenko V.G., Matveeva M.Yu., Pyrkov Yu.N., Kryukova E.B. The origin of absorption bands at 2000–1650 cm–1 in transmission spectra of As-S glasses. // Proc. Second International Workshop on Amorphous and Nanostructured Chalcogenides. 2005, Sinaia, Romania, June 20–24. P. 53–54.
  6. 6. Kozek F., Chlebny J., Cimpl Z. // Philos. Mag. B. 1983. V. 47. № 6. P. 627–639. https://doi.org/10.1080/01418638308228268
  7. 7. Tsuchihashi S., Kawamoto Y. // J. Non-Cryst. Sol. 1971. V. 5. P. 286–305. https://doi.org/10.1016/0022-3093 (71)90069-X
  8. 8. Михайлов М.Д., Туркина Е.Ю. // Физика и химия стекла. 1991. Т. 17. № 3. С. 479–484.
  9. 9. Maklad M.S., Mohr R.K., Howard R.E., Macedo P.B. and Moynihan C.T. // Solid State Commun. 1974. V. 15. P. 855–858. https://doi.org/10.1016/0038-1098 (74)90679-6
  10. 10. Halper V. // Philosophical Magazine. 1976. V. 34. № 3. P. 331–335. https://doi.org/10.1080/14786437608222026
  11. 11. Zitkovsky L., Boolchand P. // J. Non-Cryst. Sol. 1989. V. 111. Part 1. P. 70–72. https://doi.org/10.1016/0022-3093 (89)90071-9
  12. 12. Churbanov M.F. // J. Non-Cryst. Sol. 1992. V. 140. P. 324–330. https://doi.org/10.1016/S0022-3093 (05)80790-2
  13. 13. Churbanov M.F., Plotnichenko V.G. Chapter 5. Optical Fibers from High-Purity Arsenic Chalcogenide Glasses. In: Semiconducting Chalcogenide Glass III. Applications of Chalcogenide Glasses. Fairman R., Ushkov B. (Eds.). Elsevier Academic Press, Oxford, 2004. V. 80. P. 209–230. https://doi.org/10.1016/S0080-8784 (04)80029-2
  14. 14. Evdokimov I.I., Fadeeva D.A., Pimenov V.G. // J. Non-Cryst. Sol. 2018. V. 480. P. 34–37. https://doi.org/10.1016/j.jnoncrysol.2017.10.015
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